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The mole ratio of hydrogen to hydrochloric acid is 1:2. This means that in the balanced chemical equation for the reaction between hydrogen and hydrochloric acid, one mole of hydrogen reacts with two moles of hydrochloric acid.

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What volume of hydrogen measured at 0.95 ATM and 27c can be prepared by the reaction of 0.500 mole zinc with an excess of hydrochloric acid?

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To find the concentration of the hydrochloric acid solution, you first need to convert the mass of the precipitate to moles using the molar mass of silver chloride. Then, use the mole ratio from the balanced chemical equation to find the moles of hydrochloric acid used. Finally, calculate the molarity by dividing the moles of hydrochloric acid by the volume in liters.


What mass in grams of hydrogen of 120 moles of zinc are added to hydrochloric acid?

To find the mass of hydrogen produced from 120 moles of zinc reacting with hydrochloric acid, we first note the balanced chemical reaction: [ \text{Zn} + 2\text{HCl} \rightarrow \text{ZnCl}_2 + \text{H}_2 ] From the reaction, 1 mole of zinc produces 1 mole of hydrogen gas. Therefore, 120 moles of zinc will produce 120 moles of hydrogen. The molar mass of hydrogen (Hâ‚‚) is approximately 2 grams per mole, so the mass of hydrogen produced is: [ 120 , \text{moles} \times 2 , \text{g/mole} = 240 , \text{grams} ]